EA-PSB 20500-60 Triple


EA-PSB 20500-60 Triple image
Manufacturer EA - Elektro-Automatik logotype
Power 30000.00 W
Package Triple 4U
Input voltage 208-480Vac ±10% 3-phase
Efficiency 0.00
Available output range (V) 0-500
Output current (A) 0-60
Max output current 0.00
Electronic load input rating power 0.00
Dimensions 483x117x 668mm
Weight 50
Water-cooled option No

Features:

  • Worldwide Input Voltage: 208 V - 480 V, +/- 10%,3ph AC
  • Active Power Factor Correction, typical 0.99
  • Very high efficiency of over 96% in regenerative with energy recovery back to the grid
  • Voltages from 0 - 60 V up to 0 - 920 V
  • High performance with up to 10 kW per channel
  • Currents from 0 - 40 A up to 0 - 340 A per channel
  • 3 Independent, fully isolated and bidirectional DC output/input stages, with autoranging
  • Galvanically isolated Share-Bus for parallel operation
  • 3 Built-in high speed control interfaces with 1 ms communication speed

Description:

EA-PSB 20000 Triple series is the most compact multi-channel bidirectional high power DC source enabling multiple tests with a single device. A triple-channel power supply reduces the need for additional equipment. This not only lowers capital expenditure but also simplifies the testing setup, allowing engineers to focus on critical tasks without managing multiple devices. With three independent channels, customers can conduct parallel testing on different components or subsystems, such as motors, inverters, and on-board chargers, within the same test setup. This reduces the time needed to validate each component individually. The occupation of rack space is reduced by more than 50% when using triple devices instead of single output devices. By enabling more efficient testing and reducing the time required for validation and integration, a triple-channel power supply helps customers accelerate their development process. This is particularly important in fast-moving industries like automotive and renewable energy, where being first to market can be a significant competitive advantage. Operational expenses are significantly lower due to high energy recovery (up to greater than 96%) when used in bidirectional mode. Both operational and HVAC energy cost savings are realized.

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